Tribological and corrosion performance of electrodeposited Ni-Fe/Al2O3 coating

被引:12
|
作者
Rezayat, Mohammad [1 ,2 ]
Yazdi, Morteza Saghafi [1 ]
Zandi, Mohammad Damous [3 ]
Azami, Aref [3 ]
机构
[1] Imam Khomeini Int Univ, Fac Engn, Dept Mat Sci & Engn, Qazvin 34149, Iran
[2] Univ Politecn Catalunya BarcelonaTECH, Dept Mat Sci & Engn, CIEFMA, Barcelona 08019, Spain
[3] Univ Politecn Catalunya BarcelonaTECH, Dept Mech Engn, Barcelona 08019, Spain
来源
关键词
Composite coating; Abrasion; Corrosion; Micro-hardness; Multilayer coating; NI-FE; WEAR BEHAVIOR; PULSE; NANOCRYSTALLINE; ALLOY; SIZE;
D O I
10.1016/j.rsurfi.2022.100083
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Nickel-Iron coating was formed from a sulfate base electroplating bath under a current density of 3 A/dm2 2 and turbulence of 300 rpm on a previously prepared cylindrical steel substrate. In order to obtain a sample including nickel composite coating, different amounts of alumina particle powder were added to the plating solution of the sample in question. By adding different quantities of ferrous sulfate to the electroplating bath under a current density of 2.5 A/dm2 2 and turbulence of 300 rpm, an optimal sample containing 20 g/L of ferrous sulfate was obtained was free of any stress and microcracks. A hardness test was performed for the optimal sample among the nickel-iron composite samples, and the sample containing 50 g/L of alumina particles was selected as the optimal sample. The Ni-Fe/Al2O3 2 O 3 composite sample was tested for hardness, corrosion and wear. The obtained results showed that the highest hardness level is equivalent to 740 HV and the best corrosion resistance with the most positive corrosion potential. The lowest amount of wear mass is equal to 0.1 mg, and it showed the highest wear resistance.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] Effect of heat treatments on the mechanical and tribological properties of electrodeposited Fe-W/Al2O3 composites
    Mulone, Antonio
    Nicolenco, Aliona
    Imaz, Naroa
    Fornell, Jordina
    Sort, Jordi
    Klement, Uta
    WEAR, 2020, 448
  • [32] Microstructure and Properties of Electrodeposited nc-TiO2/Ni-Fe and Ni-Fe Coatings
    Ledwig, P.
    Ratajski, T.
    Indyka, P.
    Kalemba-Rec, I
    Kopia, A.
    Kac, M.
    Dubiel, B.
    METALS AND MATERIALS INTERNATIONAL, 2020, 26 (06) : 812 - 826
  • [33] Effect of Al2O3 Powders on Properties of Electrodeposited Ni Matrix
    Zhou Qi
    He Chun-lin
    Cai Qing-kui
    MULTI-FUNCTIONAL MATERIALS AND STRUCTURES II, PTS 1 AND 2, 2009, 79-82 : 631 - +
  • [34] Hot corrosion of a novel (Ni,Co)O/(Ni,Co)Fe2O4 composite coating thermally converted from an electrodeposited Ni-Co-Fe2O3 composite coating
    Ma, Li
    Zhou, Kechao
    Li, Zhiyou
    CORROSION SCIENCE, 2011, 53 (07) : 2357 - 2367
  • [35] Hydrophobicity and tribological properties of Al2O3/PTFE composite coating
    Ji, Ruo-Nan
    Liu, Chen-Xu
    Zhang, Jin
    Zhang, Shu-Guang
    Zhang, Le
    Lian, Yong
    RARE METALS, 2023, 42 (11) : 3870 - 3876
  • [36] Hydrophobicity and tribological properties of Al2O3/PTFE composite coating
    Ruo-Nan Ji
    Chen-Xu Liu
    Jin Zhang
    Shu-Guang Zhang
    Le Zhang
    Yong Lian
    RareMetals, 2023, 42 (11) : 3870 - 3876
  • [37] Hydrophobicity and tribological properties of Al2O3/PTFE composite coating
    Ruo-Nan Ji
    Chen-Xu Liu
    Jin Zhang
    Shu-Guang Zhang
    Le Zhang
    Yong Lian
    Rare Metals, 2023, 42 : 3870 - 3876
  • [38] TRIBOLOGICAL PROPERTIES OF Ti(Al,O)/Al2O3 COMPOSITE COATING BY THERMAL SPRAYING
    Salman, Asma
    Gabbitas, Brian
    Cao, Peng
    Zhang, Deliang
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2009, 23 (6-7): : 1407 - 1412
  • [39] Corrosion resistance of Al2O3 coating on a steel substrate
    Huai, Xuguo
    Zhao, Shihai
    Li, Wandeng
    JOURNAL OF CERAMIC PROCESSING RESEARCH, 2009, 10 (05): : 618 - 620
  • [40] Evaluation of corrosion resistance of electrodeposited nanocrystalline Ni-Fe alloy coatings
    Farshbaf, P. A.
    Bostani, B.
    Yaghoobi, M.
    Farshbaf, P. A.
    Bostani, B.
    Yaghoobi, M.
    Ahmadi, N. P.
    TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 2017, 95 (05): : 269 - 275